Raw data topographic measurements by Raman spectroscopy-coupled vertical scanning interferometry-measurements (R-VSI) of corroded steel surface

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Autori principali: Heuer, Janis, Lüttge, Andreas
Natura: Dataset Open Access
Lingua:en
Pubblicazione: PANGAEA 2018
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author Heuer, Janis
Lüttge, Andreas
author_facet Heuer, Janis
Lüttge, Andreas
collection Datos científicos de ciencias marinas y ambientales
contents The corrosion and degradation of materials, such as pipeline steel, have a strong effect on both the environment and the economy. The quantification of these processes can therefore provide important information needed to manage their impact. In this study, a concept for the characterization and quantification of corrosion is demonstrated on API X70 steel immersed in 3.5 wt.% NaCl solution. Due to the difficulty of quantifying corrosion rates, e.g., through single mean values, a unique system is applied that directly couples Raman spectroscopy with vertical scanning interferometry to assess the physical and chemical aspects of steel corrosion kinetics. Vertical scanning interferometry allows the quantification of the topographical evolution of corrosion product formation and material dissolution in combination with the direct measurements of the respective rates. The Raman spectroscopy provides additional information about the (mineral) phases. Rate variations ranging from uniform corrosion to areas of high pit densities are quantified and analyzed in rate maps and subsequently visualized in rate spectra. The rate distribution is classified into different domains and pitting rates. Thus, a comprehensive quantitative assessment of the characteristic corrosion behavior is discussed.
format Dataset Open Access
id pangaea_https___doi_org_10_1594_PANGAEA_896666
institution PANGAEA
language en
publishDate 2018
publisher PANGAEA
record_format pangaea
spellingShingle Raw data topographic measurements by Raman spectroscopy-coupled vertical scanning interferometry-measurements (R-VSI) of corroded steel surface
Heuer, Janis
Lüttge, Andreas
File format; File name; File size; Uniform resource locator/link to file
The corrosion and degradation of materials, such as pipeline steel, have a strong effect on both the environment and the economy. The quantification of these processes can therefore provide important information needed to manage their impact. In this study, a concept for the characterization and quantification of corrosion is demonstrated on API X70 steel immersed in 3.5 wt.% NaCl solution. Due to the difficulty of quantifying corrosion rates, e.g., through single mean values, a unique system is applied that directly couples Raman spectroscopy with vertical scanning interferometry to assess the physical and chemical aspects of steel corrosion kinetics. Vertical scanning interferometry allows the quantification of the topographical evolution of corrosion product formation and material dissolution in combination with the direct measurements of the respective rates. The Raman spectroscopy provides additional information about the (mineral) phases. Rate variations ranging from uniform corrosion to areas of high pit densities are quantified and analyzed in rate maps and subsequently visualized in rate spectra. The rate distribution is classified into different domains and pitting rates. Thus, a comprehensive quantitative assessment of the characteristic corrosion behavior is discussed.
title Raw data topographic measurements by Raman spectroscopy-coupled vertical scanning interferometry-measurements (R-VSI) of corroded steel surface
topic File format; File name; File size; Uniform resource locator/link to file
url https://doi.org/10.1594/PANGAEA.896666